layiq
worthy; deserving; fitting; suitable.
A role, opportunity, or path that merits attention, time, and pursuit.
Loading LAYIQ…Job opportunity
Johns Hopkins Applied Physics Laboratory
Laurel, Maryland
Source: Johns Hopkins Applied Physics Laboratory careers · View original posting
From Johns Hopkins Applied Physics Laboratory's posting. “We” and “our” refer to the employer.
Description
Are you interested in designing and developing new alloys for demanding applications?
Do you have experience leveraging metallurgy to understand how composition and processing control material performance?
Are you interested in translating new alloy concepts into manufacturable materials using conventional and advanced manufacturing processes?
We are seeking a Senior Metallurgist – Alloy Design & Advanced Manufacturing to lead the design, processing, and characterization of novel metals. This role will combine computational thermodynamics, experimental alloy development, and advanced manufacturing to develop materials tailored to specific performance and manufacturing requirements.
You will work across the full materials development cycle: from defining alloy compositions and processing windows through manufacturing, heat treatment, characterization, and performance evaluation.
As a Senior Metallurgist – Alloy Design & Advanced Manufacturing, you will…
Develop processing strategies for conventional and additive manufacturing
Develop processing plans that connect alloy composition, solidification, thermomechanical processing, and heat treatment to desired microstructures and properties.
Design and evaluate alloys for additive manufacturing, accounting for rapid solidification, thermal cycling, segregation, defect formation, and process-specific constraints.
Establish processing windows and heat-treatment strategies that enable reproducible material performance and translation from laboratory-scale alloy development toward manufacturing.
Design and develop advanced structural alloys
Use computational thermodynamics and materials modeling tools such as Thermo-Calc/CALPHAD to explore composition space, predict phase stability and transformations, and guide experimental alloy development.
Design alloys around application-specific combinations of mechanical performance, environmental resistance, temperature capability, manufacturability, and material availability.
Plan and execute experimental campaigns to validate computational predictions and iteratively refine alloy compositions and processing conditions.
Establish processing–structure–property relationships to guide material development
Develop characterization strategies using techniques such as SEM/EDS, EBSD, XRD, optical microscopy, and mechanical testing to understand alloy behavior.
Connect composition and processing history to phase evolution, microstructure, defects, and resulting material performance.
Use experimental results to identify mechanisms, refine alloy and process designs, and guide subsequent material development.
Why Work at APL?
The Johns Hopkins University Applied Physics Laboratory (APL) brings world-class expertise to our nation’s most critical defense, security, space and science challenges. While we are dedicated to solving complex challenges and pioneering new technologies, what makes us truly outstanding is our culture. We offer a vibrant, welcoming atmosphere where you can bring your authentic self to work, continue to grow, and build strong connections with inspiring teammates.
At APL, we celebrate our differences of perspectives and encourage creativity and bold, new ideas. Our employees enjoy generous benefits, including a robust education assistance program, unparalleled retirement contributions, and a healthy work/life balance. APL’s campus is located in the Baltimore-Washington metro area. Learn more about our career opportunities at https://www.jhuapl.edu/careers.
All qualified applicants will receive consideration for employment without regard to race, creed, color, religion, sex, gender identity or expression, sexual orientation, national origin, age, physical or mental disability, genetic information, veteran status, occupation, marital or familial status, political opinion, personal appearance, or any other characteristic protected by applicable law. APL is committed to providing reasonable accommodation to individuals of all abilities, including those with disabilities.
If you require a reasonable accommodation to participate in any part of the hiring process, please contact
Accessibility@jhuapl.edu.
The referenced pay range is based on JHU APL’s good faith belief at the time of posting. Actual compensation may vary based on factors such as geographic location, work experience, market conditions, education/training and skill level with consideration for internal parity. For salaried employees scheduled to work less than 40 hours per week, annual salary will be prorated based on the number of hours worked. APL may offer bonuses or other forms of compensation per internal policy and/or contractual designation.
Additional compensation may be provided in the form of a sign-on bonus, relocation benefits, locality allowance or discretionary payments for exceptional performance. APL provides eligible staff with a comprehensive benefits package including retirement plans, paid time off, medical, dental, vision, life insurance, short-term disability, long-term disability, flexible spending accounts, education assistance, and training and development. Applications are accepted on a rolling basis.
Minimum Rate
$100,000 Annually
Maximum Rate
$245,000 Annually
We are seeking a Senior Metallurgist – Alloy Design & Advanced Manufacturing to lead the design, processing, and characterization of novel metals. This role will combine computational thermodynamics, experimental alloy development, and advanced manufacturing to develop materials tailored to specific performance and manufacturing requirements.
You will work across the full materials development cycle: from defining alloy compositions and processing windows through manufacturing, heat treatment, characterization, and performance evaluation.
As a Senior Metallurgist – Alloy Design & Advanced Manufacturing, you will…
Develop processing strategies for conventional and additive manufacturing
Develop processing plans that connect alloy composition, solidification, thermomechanical processing, and heat treatment to desired microstructures and properties.
Design and evaluate alloys for additive manufacturing, accounting for rapid solidification, thermal cycling, segregation, defect formation, and process-specific constraints.
Establish processing windows and heat-treatment strategies that enable reproducible material performance and translation from laboratory-scale alloy development toward manufacturing.
Design and develop advanced structural alloys
Use computational thermodynamics and materials modeling tools such as Thermo-Calc/CALPHAD to explore composition space, predict phase stability and transformations, and guide experimental alloy development.
Design alloys around application-specific combinations of mechanical performance, environmental resistance, temperature capability, manufacturability, and material availability.
Plan and execute experimental campaigns to validate computational predictions and iteratively refine alloy compositions and processing conditions.
Establish processing–structure–property relationships to guide material development
Develop characterization strategies using techniques such as SEM/EDS, EBSD, XRD, optical microscopy, and mechanical testing to understand alloy behavior.
Connect composition and processing history to phase evolution, microstructure, defects, and resulting material performance.
Use experimental results to identify mechanisms, refine alloy and process designs, and guide subsequent material development.
LAYIQ is an independent job-discovery service. This listing does not imply a partnership with or endorsement by the employer. Review the original posting for current details and availability.
Employer posted: